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复苏植物薄叶卷柏在低光和中等光强下脱水过程中荧光和叶黄素色素的变化

Changes of fluorescence and xanthophyll pigments during dehydration in the resurrection plantSelaginella lepidophylla in low and medium light intensities.

作者信息

Casper Catharina, Eickmeier William G, Osmond C Barry

机构信息

Department of Botany, Duke University, 27706, Durham, NC, USA.

Department of Biology, Vanderbilt University, 37235, Nashville, TN, USA.

出版信息

Oecologia. 1993 Jul;94(4):528-533. doi: 10.1007/BF00566968.

Abstract

The changes in photosynthetic efficiency and photosynthetic pigments during dehydration of the resurrection plantSelaginella lepidophylla (from the Chiuhahuan desert, S.W. Texas, USA) were examined under different light conditions. Changes in the photosynthetic efficiency were deduced from chlorophyll a fluorescence measurements (F, F, and F) and pigment changes were measured by HPLC analysis. A small decrease in F/F was seen in hydrated stems in high light (650 μmol photons·m·s) but not in low light (50 μmol photons·m·s). However, a pronounced decline in F/F was observed during dehydration in both light treatments, after one to two hours of dehydration. A rise in F was observed only after six to ten hours of dehydration. Concomitant with the decrease in photosynthetic efficiency during dehydration a rise in the xanthophyll zeaxanthin was observed, even in low-light treatments. The increase in zeaxanthin can be related to previously observed photoprotective non-photochemical quenching of fluorescence in dehydrating stems ofS. lepidophylla. We hypothesize that under dehydrating conditions even low light levels become excessive and zeaxanthin-related photoprotection is engaged. We speculate that these processes, as well as stem curling and self shading (Eickmeier et al. 1992), serve to minimize photoinhibitory damage toS. lepidophylla during the process of dehydration.

摘要

在不同光照条件下,研究了复苏植物卷柏(来自美国德克萨斯州西南部的奇瓦瓦沙漠)脱水过程中光合效率和光合色素的变化。光合效率的变化通过叶绿素a荧光测量(F、F和F)推断得出,色素变化通过高效液相色谱分析测定。在高光(650 μmol光子·m·s)下,水合茎中的F/F略有下降,但在低光(50 μmol光子·m·s)下没有。然而,在两种光照处理的脱水过程中,脱水一到两小时后,F/F均出现明显下降。仅在脱水六到十小时后观察到F上升。与脱水过程中光合效率下降同时出现的是,即使在低光处理下,叶黄素玉米黄质也出现上升。玉米黄质的增加可能与之前在卷柏脱水茎中观察到的荧光光保护非光化学猝灭有关。我们假设在脱水条件下,即使是低光照水平也会变得过高,从而启动与玉米黄质相关的光保护作用。我们推测,这些过程以及茎卷曲和自我遮荫(Eickmeier等人,1992年),有助于在脱水过程中使卷柏受到的光抑制损伤最小化。

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